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Digital Signal Processing Algorithms: Number Theory, Convolution, Fast Fourier Transforms, and Applications (Computer Science & Engineering)
 
 
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Digital Signal Processing Algorithms: Number Theory, Convolution, Fast Fourier Transforms, and Applications (Computer Science & Engineering) [Hardcover]

Hari Krishna Garg (Author)

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Book Description

March 25, 1998 0849371783 978-0849371783 1
Digital Signal Processing Algorithms describes computational number theory and its applications to deriving fast algorithms for digital signal processing. It demonstrates the importance of computational number theory in the design of digital signal processing algorithms and clearly describes the nature and structure of the algorithms themselves. The book has two primary focuses: first, it establishes the properties of discrete-time sequence indices and their corresponding fast algorithms; and second, it investigates the properties of the discrete-time sequences and the corresponding fast algorithms for processing these sequences.
Digital Signal Processing Algorithms examines three of the most common computational tasks that occur in digital signal processing; namely, cyclic convolution, acyclic convolution, and discrete Fourier transformation. The application of number theory to deriving fast and efficient algorithms for these three and related computationally intensive tasks is clearly discussed and illustrated with examples.
Its comprehensive coverage of digital signal processing, computer arithmetic, and coding theory makes Digital Signal Processing Algorithms an excellent reference for practicing engineers. The authors' intent to demystify the abstract nature of number theory and the related algebra is evident throughout the text, providing clear and precise coverage of the quickly evolving field of digital signal processing.

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Inside This Book (learn more)
First Sentence:
Design of fast, computationally efficient algorithms has been a major focus of research activity in digital signal processing. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
finite integer rings, acyclic convolution, complex integer rings, cyclotomic factorization, cyclic convolution algorithm, dimensional cyclic convolution, cyclotomic sets, multiplicative complexity, fast digital signal processing algorithms, cyclotomic factors, complex rational numbers, monic factorization, odd index terms, computing cyclic convolution, processing data sequences, number theoretic approach, direct sum property, conjugate symmetry property, integer polynomial rings, additive complexity, bilinear algorithm, standard factorization, reconstruction polynomials, degree one factors, monic factors
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Prentice Hall, Repeat Problem, Krishna Garg, Error Correcting Codes, Generalization of Euler, Fast Convolution, Mathematics of Computation, Sorted Index of Length, Derive the Rader, John Wiley, Kluwer Academic Publishers, Modern Applications, Recalling Euler, Residue Number System Arithmetic, Write the Cooley-Tukey
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